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Fgf8与miR-133之间的相互抑制通过Bmp2信号传导调节心脏诱导。

Reciprocal repression between Fgf8 and miR-133 regulates cardiac induction through Bmp2 signaling.

作者信息

Lopez-Sanchez Carmen, Franco Diego, Bonet Fernando, Garcia-Lopez Virginio, Aranega Amelia, Garcia-Martinez Virginio

机构信息

Human Anatomy and Embryology, Faculty of Medicine, University of Extremadura, 06006 Badajoz, Spain.

Cardiovascular Development Group, Department of Experimental Biology, University of Jaén, CU Las Lagunillas B3-362, 23071 Jaén, Spain.

出版信息

Data Brief. 2015 Aug 24;5:59-64. doi: 10.1016/j.dib.2015.08.009. eCollection 2015 Dec.

Abstract

This data article contains complementary figures and results related to the research article entitled "Negative Fgf8-Bmp2 feed-back is controlled by miR-130 during early cardiac specification" [15], which reveals what specific role miR-130 plays during the cardiac induction process. This study evidenced miR-130 a putative microRNA that targets Erk1/2 (Mapk1) 3'UTR- as a necessary linkage in the control of Fgf8 signaling, mediated by Bmp2. Thus, miR-130 regulates a negative Fgf8-Bmp2 feed-back loop responsible to achieve early cardiac specification. A significant aspect supporting our conclusions is given by the expression pattern of miR-130 during early cardiac specification, as well as by those results obtained after the designed experimental procedures. The data presented here reveal that miR-133 is also expressed within the precardiac areas during early cardiogenesis, pattern which is comparable to that of FGFR1, receptor involved in the Fgf8/ERK signaling pathway. Interestingly, our miR-133 overexpression experiments resulted in a decrease of Fgf8 expression, whereas we observed an increase of Bmp2 and subsequently of cardiac specific markers Nkx-2.5 and Gata4. Additionally, our loss-of-function experiments -through Fgf8 siRNA electroporation- showed an increase of miR-133 expression. Finally, after our Bmp2 experiments, we observed that miR-133 is upstream-regulated by Bmp2. All those results suggest that miR-133 also constitutes a crucial linkage in the crosstalk between Fgf8 and Bmp2 signaling by regulating the Fgf8/ERK pathway during cardiac induction.

摘要

本数据文章包含与题为《miR-130在心脏早期特化过程中控制Fgf8-Bmp2负反馈》的研究文章相关的补充图表和结果[15],该研究揭示了miR-130在心脏诱导过程中发挥的具体作用。本研究证明miR-130是一种假定的靶向Erk1/2(Mapk1)3'UTR的微小RNA,是由Bmp2介导的Fgf8信号控制中的必要环节。因此,miR-130调节一个负向Fgf8-Bmp2反馈环,负责实现心脏早期特化。支持我们结论的一个重要方面是miR-130在心脏早期特化过程中的表达模式,以及在设计的实验程序后获得的那些结果。此处呈现的数据表明,miR-133在心脏早期发育过程中也在心前区表达,其模式与参与Fgf8/ERK信号通路的受体FGFR1的模式相似。有趣的是,我们的miR-133过表达实验导致Fgf8表达下降,而我们观察到Bmp2增加,随后心脏特异性标志物Nkx-2.5和Gata4也增加。此外,我们的功能丧失实验——通过Fgf8 siRNA电穿孔——显示miR-133表达增加。最后,在我们进行Bmp2实验后,我们观察到miR-133受Bmp2上调。所有这些结果表明,miR-133在心脏诱导过程中通过调节Fgf8/ERK途径,也构成了Fgf8和Bmp2信号通路相互作用中的关键环节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8a0/4564382/cd362b9c9fa5/fx1.jpg

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